scholarly journals Evaluation of tribotechnical properties of modified surfaces after plasma electrolytic treatment

2021 ◽  
Vol 2144 (1) ◽  
pp. 012031
Author(s):  
T L Mukhacheva ◽  
T M Kalinina ◽  
S A Kusmanov

Abstract The article considers the study of the effect of plasma electrolytic processing on the tribotechnical characteristics of medium-carbon steel. Friction tests were carried out in dry friction mode. Electron microscope and profilometer were used to study the friction tracks. For a comprehensive assessment of the quality of the modified surface layer, the Kragelsky-Kombalov complex parameter was calculated. It was found that plasma electrolytic treatment leads to a decrease in the coefficient of friction and weight wear in comparison with hardened and untreated steel. It has been determined that the mechanism of wear of samples after plasma electrolytic treatment is fatigue wear at boundary friction and plastic contact.

2021 ◽  
Vol 2144 (1) ◽  
pp. 012027
Author(s):  
S S Korableva ◽  
I R Palenov ◽  
I M Naumov ◽  
A A Smirnov ◽  
I A Kusmanova ◽  
...  

Abstract The possibility of cathodic plasma electrolytic boriding of medium-carbon steel in an aqueous solution of ammonium chloride and boric acid followed by anodic plasma electrolytic polishing in an ammonium sulfate solution on the same equipment with a change in the operating voltage is shown. The morphology and roughness of the surface, microhardness of the modified layer have been investigated. Wear resistance was studied under dry friction conditions. It has been established that cathodic boriding at 850 °C for 5–30 min leads to the hardening of the surface layer up to 1050 HV with an increase in roughness by 1.5–2.5 times and wear resistance by 3.5 times. Subsequent anodic plasma electrolytic polishing of the boriding surface leads to a decrease in roughness with an increase in wear resistance by 2.3 times.


2015 ◽  
Vol 269 ◽  
pp. 308-313 ◽  
Author(s):  
S.A. Kusmanov ◽  
A.A. Smirnov ◽  
Yu.V. Kusmanova ◽  
P.N. Belkin

Author(s):  
Vladimir I. Parfenyuk ◽  
Mariya V. Tesakova ◽  
Mitar Lutovac ◽  
Sergey A. Kusmanov ◽  
Boyana Lutovac ◽  
...  

Surface modification of titanium alloy VT 6 in aqueous solution containing 5 wt% of ammonium hydrate and 10 wt% of ammonium chloride in a temperature range of 650- 900 ºC by plasma electrolitic treatment was carried out. Characterization of surface layers of the alloy after plasma electrolytic treatment was done by Fourier Transform Infrared spectroscopy (FTIR) and powder X-ray diffraction (XRD). The FTIR spectra were recorded on a spectrometer BrukerVertex80 at room temperature in the range of 7500-350 cm-1. The spectra show the presence of rutile phase on the alloy surface after the plasma electrolytic treatment in the electrolyte solution of the indicated composition. The intensive bands at 654-643 cm-1, the weak bands near 560 cm-1 and the bands at 425-416 cm-1 can be assigned to rutile. The bands at 466-462 cm-1 are related to Ti-O-Ti stretching vibrations. With increasing temperature the relative intensity of the bands assigned to rutile increase. The plasma electrolytic treatment leads to appearence of the bands testifying enrichment of the alloy surface by nitrogen: the bands at 1634-1622 см-1 can be assigned to asymmetric bending of NH4+; the bands about 1539 cm-1 are related to N-H bending or symmetric bending of NH4+. The bands about 1428-1426 cm-1 can be also assigned to NH4+ bending vibrations. The plasma electrolytic treatment in the temperature range of 650-750 ºС results in appearance of the bands at 1069-1064 см-1. According to literature data, the bands can be assigned to vibrations of Ti-O-N. X-ray diffraction analysis allowed to ascertain crystal structure, phase identification of the titanium alloy VT 6 after its plasma electrolytic treatment. The measurements were performed using a Bruker D8 Advance diffractometer with Mo Kα radiation (λ=0.07107 nm). Analysis of XRD patterns showed that titanium oxide in the samples is present as hongquiite phase (γ- monoclinic singony) and magnesium phase (hexagonal singony). Besides the peaks of TiO, the peaks which are characteristic for hamrabevit TiC in halite phase (cubic syngony) and Ti2O3 in corundum phase (trigonal syngony) were observed.Forcitation:Parfenyuk V.I., Tesakova M.V., Lutovac M., Kusmanov S.A., Lutovac B., Belkin P.N., Parfenyuk E.V. Surface properties of titanium alloy VT 6 after plasma electrolytic treatment. Izv. Vyssh. Uchebn. Zaved. Khim. Khim. Tekhnol. 2018. V. 61. N 3. P. 58-63


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